Files
iccery-v2-mac/Tests/ICCeryCoreTests/NativeSpoolPDFTests.swift
gronod a2f994821f
macOS CI / build-and-test (push) Skipped
feat(print): 1:1 TIFF raster loader and headless page canvas (#201 Phase 3)
TargetRasterLoader decodes printtarg TIFFs via ImageIO and re-tags
into DeviceGray/DeviceRGB/DeviceCMYK around the decoder's own
dataProvider — no resample, no bit-depth change (D10). Skip-only
alpha padding (noneSkipLast/First, which ImageIO emits for opaque
RGB TIFFs) is accepted; real coverage alpha, indexed, float and
non-1/3/4-component layouts are rejected as unsupportedLayout.
DPI metadata drives pointSize (px/dpi*72) with a 72 dpi fallback +
warn; manifestDrift reports >0.5 mm disagreement with the printtarg
manifest (D9).

TargetPageCanvasView is the headless flipped canvas NSPrintOperation
paginates: rectForPage stacks pages top-down, destinationRect anchors
1:1 at the page's top-left snapped to 0.001 pt, and draw() forces
interpolation/antialias/font-smoothing off per page with a drawProbe
seam for tests.

PDF harness (NativeSpoolPDFTests, skippable via ICCERY_SKIP_PRINT_PDF=1)
ran on this host: run() -> true, 2 pages at A4 media box, and the
fixture's 72 pt patch verified 1:1 at the painted top-left (printer
unprintable-margin offset tolerated per R10).
2026-09-17 14:57:24 +01:00

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import AppKit
import CoreGraphics
import Foundation
import XCTest
@testable import ICCery
/// Issue #201 Phase 3 — real `NSPrintOperation` with
/// `jobDisposition = .save`: proves the canvas paginates at paper size,
/// draws the raster 1:1 at the top-left, and survives end-to-end
/// without a printer. Skippable via `ICCERY_SKIP_PRINT_PDF=1` for
/// hosts where the print system cannot run (R8).
@MainActor
final class NativeSpoolPDFTests: XCTestCase {
private var tempRoot: URL!
/// A4 in points.
private let paperSize = NSSize(width: 595.28, height: 841.89)
/// Known top-left patch colour — solid fill across the fixture.
private let patchBytes: [UInt8] = [230, 40, 50]
override func setUpWithError() throws {
tempRoot = try TargetTestFixtures.makeTempDirectory()
}
override func tearDownWithError() throws {
try? FileManager.default.removeItem(at: tempRoot)
}
func testSavePDFDrawsPagesOneToOne() throws {
try XCTSkipIf(
ProcessInfo.processInfo.environment["ICCERY_SKIP_PRINT_PDF"]
== "1",
"ICCERY_SKIP_PRINT_PDF=1 — print system unavailable")
// 72×72 px @ 72 dpi → a 72×72 pt solid block at the top-left.
let tiff = try TargetTestFixtures.makeTIFF(
px: CGSize(width: 72, height: 72), dpi: 72,
components: 3, bitsPerComponent: 8,
pixelBytes: patchBytes, in: tempRoot)
let raster = try TargetRasterLoader.load(tiff: tiff)
let info = NSPrintInfo()
info.paperSize = paperSize
info.orientation = .portrait
info.topMargin = 0
info.bottomMargin = 0
info.leftMargin = 0
info.rightMargin = 0
info.horizontalPagination = .clip
info.verticalPagination = .clip
info.scalingFactor = 1.0
info.isHorizontallyCentered = false
info.isVerticallyCentered = false
info.jobDisposition = .save
let pdfURL = tempRoot.appendingPathComponent("spool.pdf")
info.dictionary()[NSPrintInfo.AttributeKey.jobSavingURL] = pdfURL
let canvas = TargetPageCanvasView(
pages: [raster, raster], paperSize: paperSize)
let operation = NSPrintOperation(view: canvas, printInfo: info)
operation.showsPrintPanel = false
operation.showsProgressPanel = false
operation.canSpawnSeparateThread = false
XCTAssertTrue(operation.run(),
"NSPrintOperation.save failed")
XCTAssertTrue(
FileManager.default.fileExists(atPath: pdfURL.path))
let document = try XCTUnwrap(
CGPDFDocument(pdfURL as CFURL))
XCTAssertEqual(document.numberOfPages, 2)
let page = try XCTUnwrap(document.page(at: 1))
let mediaBox = page.getBoxRect(.mediaBox)
XCTAssertEqual(mediaBox.width, paperSize.width, accuracy: 0.5)
XCTAssertEqual(mediaBox.height, paperSize.height, accuracy: 0.5)
try assertTopLeftPatch(on: page, mediaBox: mediaBox)
}
/// Render the page at 1 px/pt and check the fixture's solid block
/// landed at the top-left at its point size — the coarse 1:1 +
/// no-scaling check.
private func assertTopLeftPatch(
on page: CGPDFPage, mediaBox: CGRect
) throws {
let width = Int(ceil(mediaBox.width))
let height = Int(ceil(mediaBox.height))
let rep = try XCTUnwrap(NSBitmapImageRep(
bitmapDataPlanes: nil,
pixelsWide: width,
pixelsHigh: height,
bitsPerSample: 8,
samplesPerPixel: 4,
hasAlpha: true,
isPlanar: false,
colorSpaceName: .deviceRGB,
bytesPerRow: 0,
bitsPerPixel: 0))
let context = try XCTUnwrap(
NSGraphicsContext(bitmapImageRep: rep))
let cg = context.cgContext
let transform = page.getDrawingTransform(
.mediaBox,
rect: CGRect(x: 0, y: 0, width: width, height: height),
rotate: 0, preserveAspectRatio: true)
NSGraphicsContext.saveGraphicsState()
NSGraphicsContext.current = context
cg.concatenate(transform)
cg.drawPDFPage(page)
NSGraphicsContext.restoreGraphicsState()
func pixel(_ x: Int, _ y: Int) throws -> (Double, Double, Double) {
let color = try XCTUnwrap(
rep.colorAt(x: x, y: y)?.usingColorSpace(.deviceRGB))
return (color.redComponent,
color.greenComponent,
color.blueComponent)
}
func isPatch(_ p: (Double, Double, Double)) -> Bool {
abs(p.0 - Double(patchBytes[0]) / 255) < 0.04
&& abs(p.1 - Double(patchBytes[1]) / 255) < 0.04
&& abs(p.2 - Double(patchBytes[2]) / 255) < 0.04
}
// The print system insets the view by the queue's unprintable
// margin (R10) — host-dependent, ~18 pt on this machine — so
// the block's anchor is the painted region's top-left, not
// (0,0). Find the painted origin by the first opaque pixel.
var originX = width, originY = height
for y in 0..<height {
for x in 0..<width
where (rep.colorAt(x: x, y: y)?.alphaComponent ?? 0) > 0.5 {
originX = min(originX, x)
originY = min(originY, y)
}
}
XCTAssertLessThan(originX, width, "PDF page rendered empty")
XCTAssertLessThan(originY, height, "PDF page rendered empty")
// 10 px inside the 72 pt block on each axis → patch colour.
XCTAssertTrue(try isPatch(pixel(originX + 10, originY + 10)),
"top-left block is not the fixture colour")
// Measure the block's painted width on a row through it:
// 72 pt at 1 px/pt — the 1:1 / no-scaling assertion.
var blockWidth = 0
var x = originX
while x < width,
isPatch(try pixel(x, originY + 10)) {
blockWidth += 1
x += 1
}
XCTAssertEqual(blockWidth, 72, accuracy: 2)
// Past the block edge the canvas's white page fill shows.
let outside = try pixel(originX + 80, originY + 80)
XCTAssertEqual(outside.0, 1, accuracy: 0.04)
XCTAssertEqual(outside.1, 1, accuracy: 0.04)
XCTAssertEqual(outside.2, 1, accuracy: 0.04)
}
}